Publication overview

389 publications found

Dynamic Avalanches: Rate-Controlled Switching and Race Conditions
Jin, L., & Hecke, M. (2025). Dynamic Avalanches: Rate-Controlled Switching and Race Conditions Phys. Rev. Lett., 135(21), 218201: 1–8 doi:http://dx.doi.org/10.1103/yzw2-wxw1
A soft robotic total artificial hybrid heart
M. Arfaee, A. Vis, P.A.A. Bartels, L.C. Laake, L. Lorenzon, D.M. Ibrahim, D. Zrinscak, I.P.M. Smits, A. Henseler, M. Cianchetti, P.Y.W. Dankers, C.V.C. Bouten, J.T.B. Overvelde, J. Kluin, A soft robotic total artificial hybrid heart, Nat. Commun. 16, 5146: 1-14, (2025)
Collective actuation in active solids in the presence of a polarizing field: A systematic analysis of the dynamical regimes
Baconnier, P., Démery, V., & Dauchot, O. (2025). Collective actuation in active solids in the presence of a polarizing field: A systematic analysis of the dynamical regimes Phys. Rev. E, 112(4), 045505: 1–15 doi:http://dx.doi.org/10.1103/2gyr-j911
Photonics in Flatland: challenges and opportunities for nanophotonics with 2D semiconductors
Azimi, A., Barrier, J., Barreda, A.I., et al. (2025). Photonics in Flatland: challenges and opportunities for nanophotonics with 2D semiconductors npj Nanophoton., 2(1), 44: 1–20 doi:http://dx.doi.org/10.1038/s44310-025-00092-3
Optical Reabsorption Effects in Photoluminescence of Perovskites Conformally Coated on Textured Silicon
A. Callies, O. Er-Raji, R. Schot, S. Lange, B. Bläsi, T. Veeken, K. Buse, A. Polman, S.W. Glunz, J. Borchert, O. Höhn, P.S.C. Schulze, Optical Reabsorption Effects in Photoluminescence of Perovskites Conformally Coated on Textured Silicon, Solar RRL 9, 2500048: 1-9, (2025)
How Many Mobile Ions Can Electrical Measurements Detect in Perovskite Solar Cells?
Schmidt, M.C., & Ehrler, B. (2025). How Many Mobile Ions Can Electrical Measurements Detect in Perovskite Solar Cells? ACS Energy Lett., 10(5), 2457–2460 doi:http://dx.doi.org/10.1021/acsenergylett.5c00887
The Photoluminescence Ensemble: Techniques for Advanced Characterization of Metal Halide Perovskites
Gillespie, S.C. (2025). The Photoluminescence Ensemble: Techniques for Advanced Characterization of Metal Halide Perovskites.
Body-wide synchronization of insulin-signaling dependent DAF-16/FOXO nuclear translocation pulses correlated with C. elegans growth
Demirbas, B., Filina, O., Louisse, T., et al. (2025). Body-wide synchronization of insulin-signaling dependent DAF-16/FOXO nuclear translocation pulses correlated with C. elegans growth Nat. Commun., 16(1), 11273: 1–16 doi:http://dx.doi.org/10.1038/s41467-025-66164-2
Multi-frequency wave focusing in rationally pruned disordered networks
Krushynska, A.O., & Hecke, M. (2025). Multi-frequency wave focusing in rationally pruned disordered networks Matter, 8(12), 102364: 1–10 doi:http://dx.doi.org/10.1016/j.matt.2025.102364
Reentrant Transition to Collective Actuation in Active Solids with a Polarizing Field
Baconnier, P., Aksil, M., Démery, V., et al. (2025). Reentrant Transition to Collective Actuation in Active Solids with a Polarizing Field Phys. Rev. Lett., 135(18), 188302: 1–6 doi:http://dx.doi.org/10.1103/qj64-m15g
Quantification of Mobile Ions in Perovskite Solar Cells with Thermally Activated Ion Current Measurements
Schmidt, M.C., Alvarez, A.O., Pallotta, R., et al. (2025). Quantification of Mobile Ions in Perovskite Solar Cells with Thermally Activated Ion Current Measurements ACS Energy Lett., 11(1), 409–418 doi:http://dx.doi.org/10.1021/acsenergylett.5c02224
Optical Metasurfaces for Information Efficient Nanoscale Metrology
Feldman, N. (2025). Optical Metasurfaces for Information Efficient Nanoscale Metrology.
A travelling-wave strategy for plant–fungal trade
L. Oyarte Gálvez, C. Bisot, P. Bourrianne, R.I.M. Cargill, M. Klein, M. Son, J. Krugten, V.E.A. Caldas, T. Clerc, K.-K. Lin, F. Kahane, S. Staalduine, J.D. Stewart, V. Terry, B. Turcu, S. Otterdijk, A. Babu, M. Kamp, M. Seynen, B. Steenbeek, J. Zomerdijk, E. Tutucci, M. Sheldrake, C. Godin, V. Kokkoris, H.A. Stone, E.T. Kiers, T.S. Shimizu, A travelling-wave strategy for plant–fungal trade, Nature 639, 172-180, (2025)
The scavenger receptor MARCO is a ligand for the immune inhibitory receptor LAIR-1 and regulates its function in cis
Singh, A., Vijver, S.V., Aglmous-Talibi, H., et al. (2025). The scavenger receptor MARCO is a ligand for the immune inhibitory receptor LAIR-1 and regulates its function in cis Sci. Signal., 18(916), eado2768 doi:http://dx.doi.org/10.1126/scisignal.ado2768
Reprogrammable, In-Materia Matrix-Vector Multiplication with Floppy Modes
Louvet, T., Omidvar, P., & Serra-Garcia, M. (2025). Reprogrammable, In-Materia Matrix-Vector Multiplication with Floppy Modes Adv. Intell. Syst, 7(10), 2500062: 1–9 doi:http://dx.doi.org/10.1002/aisy.202500062
Fiber-based plasmonic microreactor for flow chemistry
Spelthann, S., Filipkowski, A., Adolfs, V., et al. (2025). Fiber-based plasmonic microreactor for flow chemistry Proc. SPIE 13522, Eighth International Workshop on Specialty Optical Fibers and Their Applications (WSOF 2025) doi:http://dx.doi.org/10.1117/12.3056426
On the intimate relation of proton transfer and molecular complexation
B. Antalicz, On the intimate relation of proton transfer and molecular complexation, (2025)
A Rational Framework to Estimate the Chiroptical Activity of [6]Helicene Derivatives
M. Vanzan, S. Bertuletti, G. Becatti, B. Bazan, M.T. Rispens, S.I.C. Wan, M. Leeman, W.L. Noorduin, F. Baletto, A Rational Framework to Estimate the Chiroptical Activity of [6]Helicene Derivatives, J. Phys. Chem. A 129, 9537-9547, (2025)
Intuitive dissection of the Gaussian information bottleneck method with an application to optimal prediction
V. Galstyan, A.J. Tjalma, P.R. Wolde, Intuitive dissection of the Gaussian information bottleneck method with an application to optimal prediction, Phys. Rev. Research 7, 043261: 1-19, (2025)
Defect passivation and enhanced UV emission in β-Ga2O3 via remote fluorine plasma treatment
A.K. Salih, S. Fiedler, C.P. Irvine, F. Matar, M.R. Phillips, C. Ton-That, Defect passivation and enhanced UV emission in β-Ga2O3 via remote fluorine plasma treatment, Appl. Surf. Sci. 687, 162250: 1-7, (2025)
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